THE MICRO-SCALE MODELING BY EXPERIMENTAL STUDY IN PEM FUEL CELL
Abstract
This study posed parameters effects to the PEM fuel cell performance by an experimental work. The aim
of this study is to investigate performance effects of PEM fuel cells and to optimize water conditions as well as
fuel cell performance. Platinum-plated catalyzed anode performance was demonstrated for the micro-scale
modeling by experimental study in PEM fuel cell. Therefore, time dependent voltage and current parameter
changes were observed for the performance analysis in the experimental study. PEM fuel cell was enhanced by
adjusting the anode plate, air feed pump and hydrogen fuel quantities. This study is to determine about optimizing
some parameters pressure, flow rate, voltage for the fuel cell performance. The result of this study was found to
be 2.62 x 10-7
[kg/s] average of water production and generated 42.5 [kJ] H2 energy. In conclusion, performance
efficiency was found to be around 52%. These results demonstrated that water production was also very significant
for the PEM fuel cell durability. PEM fuel cell energy efficiency increases while the mass flow is in a certain range
and under pressure atmospheric conditions.
Keywords
References
- [1] X. Huang, K. Reifsnider, Modern aspects of electrochemistry 49: Durability of PEM fuel cell, 1-42, Springer, London, 2010.
- [2] M.Emery, M. Frey, M. Guerra, et al., Proton exchange membrane fuel cell 7: The development of new membranes for proton exchange membrane fuel cell, ESC Transactions, Volume 11, Issue 1: 3-14, 2007.
- [3] F. Arbabi, R. Roshandel, G. Karimi Moghaddam, Numerical modeling of an innovative bipolar plate design based on the leaf venation patterns for PEM fuel cells, IJE Transactıons C: Aspects, Volume 25, No 3: 177- 186, 2012.
- [4] F. Y. Zhang, X. G. Yang, C. Y. Wang, Liquid water removal from a polymer electrolyte fuel cell, Journal Electrochemical, 153, 2: 225-232, 2006.
- [5] F. Y. Zhang, S. G. Advani, A. K. Prasad, Performance of a metallic gas diffusion layer for PEM fuel cells, Journal of Power Sources, Volume 176, Issue 1, 293–298, 2008.
- [6] B. Dokkar, N. Settou, O. Imine, B. Negrou, N. Saifi, N. Chennouf, Simulation of water management in the membrane of PEM fuel cell, EFEEA’10 International Symposium on Environment Friendly Energies in Electrical Applications, Ghardaia, Algeria, 1-4, 2010.
- [7] C. Bao, M. Ouyang, B. Yl, Analysis of water management in proton exchange membrane fuel cells, Tsinghua Science and Technology, 11 1: 54-64, 2006.
- [8] A. Ekiz, T. Camcı, İ. Türkmen, et al., PEM tipi yakıt pilleri için çift kutuplu akış plakalarının modellenmesi, Gazi Üniversitesi Mühendislik ve Mimarlık Fakültesi Dergisi, 26, 3: 591-605, 2011.
Details
Primary Language
English
Subjects
Engineering
Journal Section
Research Article
Authors
Publication Date
October 4, 2017
Submission Date
May 29, 2017
Acceptance Date
July 30, 2017
Published in Issue
Year 2017 Volume: 3 Number: 6
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